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通过高分辨率计算流体动力学检测56例大脑中动脉动脉瘤的血流不稳定性

Flow Instability Detected by High-Resolution Computational Fluid Dynamics in Fifty-Six Middle Cerebral Artery Aneurysms.

作者信息

Varble Nicole, Xiang Jianping, Lin Ning, Levy Elad, Meng Hui

出版信息

J Biomech Eng. 2016 Jun;138(6):061009. doi: 10.1115/1.4033477.

Abstract

Recent high-resolution computational fluid dynamics (CFD) studies have detected persistent flow instability in intracranial aneurysms (IAs) that was not observed in previous in silico studies. These flow fluctuations have shown incidental association with rupture in a small aneurysm dataset. The aims of this study are to explore the capabilities and limitations of a commercial cfd solver in capturing such velocity fluctuations, whether fluctuation kinetic energy (fKE) as a marker to quantify such instability could be a potential parameter to predict aneurysm rupture, and what geometric parameters might be associated with such fluctuations. First, we confirmed that the second-order discretization schemes and high spatial and temporal resolutions are required to capture these aneurysmal flow fluctuations. Next, we analyzed 56 patient-specific middle cerebral artery (MCA) aneurysms (12 ruptured) by transient, high-resolution CFD simulations with a cycle-averaged, constant inflow boundary condition. Finally, to explore the mechanism by which such flow instabilities might arise, we investigated correlations between fKE and several aneurysm geometrical parameters. Our results show that flow instabilities were present in 8 of 56 MCA aneurysms, all of which were unruptured bifurcation aneurysms. Statistical analysis revealed that fKE could not differentiate ruptured from unruptured aneurysms. Thus, our study does not lend support to these flow instabilities (based on a cycle-averaged constant inflow as opposed to peak velocity) being a marker for rupture. We found a positive correlation between fKE and aneurysm size as well as size ratio. This suggests that the intrinsic flow instability may be associated with the breakdown of an inflow jet penetrating the aneurysm space.

摘要

最近的高分辨率计算流体动力学(CFD)研究在颅内动脉瘤(IA)中检测到了持续的血流不稳定性,而这在之前的计算机模拟研究中并未观察到。这些血流波动在一个小的动脉瘤数据集中显示出与破裂的偶然关联。本研究的目的是探讨商业CFD求解器在捕捉此类速度波动方面的能力和局限性,作为量化这种不稳定性的标志物的波动动能(fKE)是否可能是预测动脉瘤破裂的潜在参数,以及哪些几何参数可能与这种波动相关。首先,我们证实需要二阶离散格式以及高空间和时间分辨率来捕捉这些动脉瘤的血流波动。接下来,我们通过具有周期平均、恒定流入边界条件的瞬态、高分辨率CFD模拟,分析了56个患者特异性大脑中动脉(MCA)动脉瘤(12个破裂)。最后,为了探究这种血流不稳定性可能产生的机制,我们研究了fKE与几个动脉瘤几何参数之间的相关性。我们的结果表明,56个MCA动脉瘤中有8个存在血流不稳定性,所有这些都是未破裂的分叉动脉瘤。统计分析表明,fKE无法区分破裂和未破裂的动脉瘤。因此,我们的研究不支持这些血流不稳定性(基于周期平均恒定流入而非峰值速度)作为破裂的标志物。我们发现fKE与动脉瘤大小以及大小比之间存在正相关。这表明内在的血流不稳定性可能与穿透动脉瘤空间的流入射流的破裂有关。

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